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The Effect of Aircraft Traffic Emissions on the Soil Surface Contamination Analysis around the International Airport in Delhi, India

机译:飞机交通排放对印度德里国际机场土壤表面污染分析的影响

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摘要

To investigate the effect of aircraft traffic emissions on soil pollution, metal levels were analyzed for 8 metals (Fe, Cr, Pb, Zn, Cu, Ni, Mn and Cd) from the vicinity of the Indira Gandhi International (IGI) airport in Delhi, India. The texture of the airport soil was observed to be sandy. Among the metals, Cd showed minimum concentration (2.07 μg g-1), while Fe showed maximum concentration (4379 μg g-1). The highest metal accumulation was observed at the landing site. Significant correlations were observed between metals and different textures (sand, silt, and clay) as well as with organic carbon (OC). The results indicate that grain size play a major role in OC retention in soil and subsequently helps in adsorption of metals in soil. Müller’s geoaccumulation index (I-geo) showed that airport soil was contaminated due to Cd and Pb with the pollution class 2 and 1, respectively. Pollution load index of the airport site was 1.34-3 times higher than the background site. The results of factor analysis suggested that source of the soil metal is mainly from natural weathering of soil, aircraft exhaust, and automobile exhaust from near by area. With respect to Dutch target values, the airport soils showed ~3 times higher Cd concentration. The study highlighted the future risk of enhanced metal pollution with respect to Cd and Pb due to aircraft trafficking.
机译:为了调查飞机交通排放对土壤污染的影响,分析了德里·迪拉甘地国际(IGI)机场附近的8金属(Fe,Cr,Pb,Zn,Cu,Ni,Mn和Cd)的金属水平, 印度。机场土壤的质地被观察到桑迪。在金属中,Cd显示最小浓度(2.07μgg-1),而Fe显示出最大浓度(4379μgg-1)。在着陆位点观察到最高的金属积累。在金属和不同纹理(砂,淤泥和粘土)以及有机碳(OC)之间观察到显着相关性。结果表明,晶粒尺寸在土壤中的OC保留中发挥着重要作用,随后有助于吸附土壤中的金属。 Müller的地理读物指数(I-Geo)显示,由于CD和PB分别具有污染等级2和1的PB因CD和PB而受到污染。机场网站的污染负荷指数比背景现场高1.34-3倍。因子分析的结果表明,土壤金属的来源主要来自土壤,飞机排气和汽车排气的自然风化,从接近区域。关于荷兰目标价值,机场土壤呈〜3倍的CD浓度。该研究突出了由于飞机贩运导致CD和PB增强金属污染的未来风险。

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